The E-PROPS PROPELLERS Company
ZI aerodrome Sisteron
04200 VAUMEILH - France
Phone : +33 4 92 34 00 00
Phone reception opened from Monday to Friday
From 9 to 12 a.m and 2 to 4 p.m.
The best way to reach us is by email : helices@e-props.fr

E-PROPS : propellers with an exceptional efficiency

special design = the best efficiency

A propeller must :
- be exactly adapted to the engine, its moment of inertia and the max RPM
- give the best thrust
- be ultra-light to be as reactive as possible, and to guarantee a long life to the engine
- be as silent as possible

The E-PROPS propellers are very different from the other propellers. They have special profiles, patented designs, and special position of the blades to reduce the blades drag, so to obtain the best thrust.

The E-PROPS team has developed many different models (2-, 3-, 4-, 6-blades), for engines with reducers, in different diameters.

1- Propeller efficiency

Propulsion efficiency factor is calculated from propeller diameter and engine power. This efficiency factor is the max achievable propeller efficiency. Then, it is up to the propeller designer to come closer to this limit.

This software allows the team to imagine new propellers concepts, by using particular geometries and profiles developed inhouse. That is why E-PROPS propellers are very different from other propellers proposed at present on the market.

When we speak of efficiency, we obviously speak of thrust and also of fuel consumption.
A propeller which has a better efficiency allows to reduce the fuel consumption of the engine.

The E-PROPS propellers have a thin chord (chord = width of the blade). A thin chord generates less drag than a wide chord and leads to a better efficiency of the propeller, a better thrust, makes less noise and reduces fuel consumption.

On average, the use of a E-PROPS propeller allows to save between 6 and 9% of fuel at the same engine RPM (it depends on the blades geometries).

=> Please note :
This is true if the blade form is exactly adapted to the configuration : a blade of a 2-blades propeller mounted on a 3-blades or 4-blades hub would not give the best performances.
The "universal" blade for any configuration does not exist. Every propeller has a dedicated blade geometry, or the efficiency would not be the best.

3- Propeller diameters

The increase of the diameter is better for the efficiency, because of the improvement of the pusher efficiency.
More static thrust is obtained with a propeller with a diameter of 180 cm than with a propeller with a diameter of 155 cm.
With the same number of blades, the thrust gap depends on the diameters and on the engine + reducer.

4- Propellers : 2-blade / 3-blade

Some people are saying that the wake of the third blade of a 3-blade propeller is crossing the wake of the 2 other blades, and this phenomenon decreases the efficiency of the propeller.
That's wrong. The wakes of the different blades cannot crossed themselves. It is physically impossible, because the blade's wake is sweeped away by the wind.
Demonstration :